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includes modelling electrolysers, fuel-synthesis units and supporting energy-system components and analyzing how these systems can operate efficiently and flexibly in response to fluctuations in renewable
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the behavior of Power-to-X plants under varying operating conditions. This includes modelling electrolysers, fuel-synthesis units and supporting energy-system components and analyzing how these systems can
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candidate and a postdoctoral researcher. The candidate’s workplace will be in Aalborg. As part of this project, you will investigate the impact of generative AI on creative processes and design novel ways
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nanofabrication, 2D materials and electronic transport, and develop sample architectures that can be transferred between measurement platforms. A central goal is to connect the structure of a fabricated
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, where the system is fully integrated, has undergone comprehensive qualification testing, and has received formal certification from DNV. The successful candidate will lead tasks related to load and
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academic backgrounds are also encouraged to apply if their qualifications and proposed project are relevant to the research area. We are particularly interested in candidates who can formulate a clear
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for inclusive, sustainable, and beautiful green transitions. Together, these actions generate evidence and transferable strategies that show how culture and care can nurture Europe’s social fabric, ensuring
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, and machine-learned force fields to describe ion transport and interfacial evolution. These models will be extended to mesoscopic and continuum scales (kinetic Monte Carlo, phase-field) to capture
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aim is to deliver high-quality research, with a strong emphasis on publishing in leading academic journals and presenting at recognised conferences. You can read more about the Department of Management
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. Quantify flow-induced radial and axial forces under design and off-design operating conditions. Identify and model dominant loss mechanisms and their thermal and mechanical interactions. Assess the influence